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Columnar vortices induced by dielectrophoretic force in a stationary cylindrical annulus filled with a dielectric liquid

机译:在填充有介电液体的固定圆柱环中的静电电泳诱导的柱状涡流

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摘要

The dynamics of flow of a dielectric fluid in a vertical cylindrical annulus with a fixed temperature difference and an increasing alternating electric tension has been investigated using a direct numerical simulation (DNS). The temperature difference imposed on the cylindrical surfaces induces a radial temperature gradient perpendicular to the ground gravity which generates a baroclinic flow ascending near the hot surface and descending near the cold one. The electric field coupled with the permittivity gradient generates a dielectrophoretic buoyancy force which is a source of vorticity. Above a critical value of the electric tension, the flow bifurcates to a pattern of stationary columnar vortices. These columnar vortices which characterize the thermoelectric convection are not axially invariant, in contrast with classical Taylor columns. They bifurcate to regular wave patterns and then to spatio-temporal chaotic patterns when the electric field intensity is increased. The flow and temperature fields, the kinetic energy and the enstrophy of thermoelectric convective regimes are computed for different values of the electric tension.
机译:采用直接数值模拟(DNS)方法研究了在固定温差和增加交变电张力的情况下,介质流体在垂直圆柱环空中的流动动力学。施加在圆柱表面上的温差会导致垂直于地面重力的径向温度梯度,从而产生斜压气流,在热表面附近上升,在冷表面附近下降。电场与介电常数梯度耦合产生介电浮力,这是涡度的来源。高于临界电张力时,流动分岔为固定柱状涡。与经典泰勒柱相比,这些表征热电对流的柱状涡不是轴向不变的。当电场强度增加时,它们会分岔为规则波模式,然后分岔为时空混沌模式。计算了不同电张力下热电对流区的流场、温度场、动能和拟能。

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